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A nonlinear speed controller for doubly-fed induction motor (DFIM) based on backstepping control and fuzzy sliding mode approach was designed to counter the effects of the coupling between the electromagnetic torque and the flux. The proposed strategy using fuzzy switching control could enhance the robustness adaptively compare with conventional sliding mode control. A simulation model for the doubly-fed...
A nonlinear speed controller for permanent magnet synchronous motor (PMSM) based on backstepping control, sliding mode approach and RBF network was designed. On the one hand, the proposed strategy adopts backstepping to guarantee the control precision. On the other hand, the combined RBF sliding mode method could enhance the robustness compare with conventional sliding mode control. A simulation model...
A nonlinear speed controller for permanent magnet synchronous motor (PMSM) was designed to achieve speed tracing control and robust adaptive control. The proposed strategy was composed of nominal model method, backstepping control, sliding mode approach and RBF network approach. The controller included two parts: the model controller and the robust controller. The former was designed to ensure a desired...
A nonlinear speed controller for doubly-fed induction motor (DFIM) was designed to counter the effects of the coupling between the electromagnetic torque and the flux. The controller was composed of sliding mode approach, backstepping control, and RBF network approach. The backstepping control was used to implement the precision control. The proposed strategy used RBF network to realize the self-adjusting...
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